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管道中低速风扇宽带噪声的抑制。

Suppression of broadband noise radiated by a low-speed fan in a duct.

机构信息

Department of Mechanical Engineering, University of Hong Kong, Pokfulam Road, Hong Kong SAR, China.

出版信息

J Acoust Soc Am. 2010 Jul;128(1):152-63. doi: 10.1121/1.3372749.

Abstract

Attenuation of ducted fan noise remains a technical challenge in the low frequency range as traditional duct lining becomes ineffective. This study proposes a reactive method to suppress the sound radiation from an axial-flow fan. The method is particularly effective in the low frequency region and covers a broad band. Its effect is derived from two mechanisms. One is the reduction in the confining effects of duct walls when the duct radius is increased; the other is the acoustic interference between the direct radiation from the fan and reflections by the duct junctions. This interference is always destructive for axial dipoles when the frequency approaches zero. This performance differs from normal passive control methods, which become totally ineffective toward zero frequency. An approximate plane-wave theory explains the essential physics of the method, and its quantitative prediction is found to agree well with a full numerical simulation using a spectral method of Chebyshev collocation. The latter is validated by experiment using an axial-flow fan in a duct of finite length. Broadband noise reduction is achieved while the flow speed is kept unchanged. Practical difficulties of implementation for a fan with high pressure increase are discussed.

摘要

管道风扇噪声的衰减仍然是低频范围内的一项技术挑战,因为传统的管道衬里变得无效。本研究提出了一种抑制轴流风扇声辐射的反应方法。该方法在低频区域特别有效,覆盖了很宽的频带。其效果源自两个机制。一个是当管道半径增加时,管道壁的限制作用减小;另一个是风扇直接辐射和管道接头反射之间的声干涉。当频率接近零时,这种干涉对于轴向偶极子总是具有破坏性的。这种性能与正常的被动控制方法不同,后者对于零频率完全无效。一个近似的平面波理论解释了该方法的基本物理原理,并且发现其定量预测与使用切比雪夫配置的谱方法的全数值模拟很好地吻合。后者通过在有限长度的管道中使用轴流风扇的实验得到验证。在保持流速不变的情况下,实现了宽带噪声降低。讨论了具有高压增加的风扇的实施的实际困难。

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